A crop residue handling device is mounted to the rear of a combine harvester for intercepting crop residue that remains after grain has been separated from the crop by the separator and cleaning arrangement of the harvester. The residue handling device includes a chopper which chops and impels the chopped residue rearwardly through a discharge duct. A transition duct receives the crop exiting from the chopper and contains upright deflector vanes mounted for pivoting and being automatically moved among desired positions, by a power actuator so as to direct desired proportions of the crop residue between a blower for receiving and accelerating the crop through a discharge chute for collection in a receptacle of a towed trailer, and a pair of spreader disks located at opposite sides of the blower for receiving and dispersing the crop residue on the ground.
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9. A crop residue handling arrangement adapted for being mounted to a combine harvester in symmetrical relationship to a vertical plane passing through a longitudinal center of the harvester, comprising: a crop residue chopper having a forwardly opening inlet and a rearwardly directed discharge duct; a blower spaced rearward of, and being centered relative to, said chopper and including a blower inlet in a lower front region of said blower; a pair of crop residue spreader disks being respectively located on opposite sides of, and spaced below, said blower inlet; a transition duct arrangement being located between said chopper and said blower and spreader disks, the transition duct including a top wall having a forward end fixed to a top wall of said chopper discharge duct so that chopped crop residue exiting from said chopper is directed along an inside surface of said top wall; said top wall having a rear end having opposite end regions respectively extending above said pair of spreader disks and defining a U-shaped rearwardly-opening recess joined to said opposite end regions, with a bottom of said recess being fixed to an upper edge of said blower inlet; said lower front region of said blower being located in said recess; a pair of upright side walls respectively being joined to opposite sides of said top wall and extending forwardly from opposite ends of said rear end; an upright deflector vane arrangement being mounted under said top wall for movement among various positions for varying the amount of said chopped crop residue which reaches said blower and said pair of spreader disks, including a first extreme position wherein all of said chopped crop residue is directed to said blower for collection, and a second extreme position wherein all of said chopped crop residue is directed to said pair of spreader disks for being dispersed onto the ground; and a power actuator being coupled to said upright vane arrangement for selectively moving said vane arrangement among said various positions, including said first and second extreme positions.
1. In a crop residue handling arrangement adapted for being mounted to a rear end of a combine harvester and including a rotary chopper having a bladed rotor mounted within a chopper housing with the chopper housing defining an inlet for guiding crop residue to the rotor and a discharge duct for directing a stream of chopped crop residue rearwardly; a blower including a blower rotor mounted within a blower housing located centrally behind, and spaced to the rear from, said chopper and defining a forwardly opening inlet for receiving said stream of chopped crop residue exiting said discharge duct of said chopper, and defining an upwardly and rearwardly disposed discharge spout for directing crop residue to a collecting receptacle; and a pair of spreader disks being respectively mounted on opposite sides of said blower; and a transition duct arrangement being mounted between said chopper and said blower and pair of spreader disks, the improvement comprising: said transition duct arrangement including a top wall having a forward edge connected to a top of said chopper discharge duct and having a rear edge spaced vertically above said pair of spreader disks, and a pair of side walls being respectively joined to opposite sides of said top wall and extending forwardly from opposite ends of said rear edge; and right and left upright crop residue deflector vanes located beneath said top wall and having respective pivotal mountings at their rear ends for permitting the deflector vanes to pivot, about respective axes extending perpendicular to said top wall at respective locations at opposite sides of said inlet to said blower housing, between a first extreme position, wherein forward ends of the deflector vanes engage each other thereby preventing said stream of chopped crop residue from entering said blower housing while dividing said stream into first and second parts that are respectively directed to said pair of spreader disks by said vanes and said opposite side walls, and a second extreme position, wherein said forward ends of said deflector vanes are located at opposite sides of said stream of crop residue, whereby the entire stream is directed to said blower; and a power actuator being coupled to said right and left deflector vanes for moving said vanes between said first and second extreme positions.
2. The crop residue handling arrangement, as defined in
3. The crop residue handling arrangement, as defined in
4. The crop residue handling arrangement, as defined in
5. The crop residue handling arrangement, as defined in
6. The crop residue handling arrangement, as defined in
7. The crop residue handling arrangement, as defined in
8. The crop residue handling arrangement, as defined in
10. The crop residue handling arrangement, as defined in
11. The crop residue handling arrangement, as defined in
12. The crop residue handling arrangement, as defined in
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The present invention relates to collecting crop residue discharged from a combine harvester, and more specifically relates to a way of diverting all or a selected portion of the crop residue from the collector so that it may be dispersed onto the ground.
It is known to collect crop residue discharged from the back of a combine harvester and to convey the collected material into an in-field collection device. Further, it is known to provide a horizontal deflector door to split a flow of residue into upper and lower streams with the upper stream being collected and the lower stream being directed to spreader vanes which operate to disperse the lower stream onto the ground. A crop residue handling device of this type is disclosed in U.S. patent application Ser. No. 12/062,846, filed Apr. 4, 2008 and published as US 2008/0248843 on Oct. 9, 2008. This patent application discloses a control system for automatically varying the amount of the crop residue collected as a function of one or more of soil parameters, crop parameters or terrain parameters, which parameters are sensed “on the go” during the harvesting procedure and/or are provided in the form of previously garnered field mapping data which is used in conjunction with an on-board global positioning system to output desired control signals.
A refinement of the known residue handling device was developed which included a transverse wedge-shaped nose for intercepting crop from the horizontal deflector so as to split the crop into the upper and lower streams. While this usage of a wedge-shaped nose for splitting the residue flow worked satisfactorily in respective modes wherein all of the flow was collected or all of the flow was diverted, the operation was not satisfactory for varying the flow between these two extreme modes, and crop residue tended to hairpin on the splitting nose resulting in plugging.
The problem to be solved then is to provide an apparatus for splitting crop residue issuing from the back of a combine between a collection arrangement and a spreading arrangement while avoiding the drawbacks associated with the known splitter arrangement.
According to the present invention, a combine harvester is equipped with a crop residue handling arrangement including an improved crop residue flow splitting arrangement.
An object of the invention is to provide a crop residue flow splitting arrangement capable of establishing first and second extreme modes wherein all or none of the flow is permitted to pass on to a collection arrangement and for establishing a number of intermediate modes wherein the flow is split into side-by-side streams for allowing desired proportions of the flow to pass on to the collection arrangement or to a residue spreading arrangement.
This object is achieved by a crop residue handling arrangement including a crop residue chopper which discharges into a transition duct having a discharge end central region which is in communication with an accelerator for discharging crop into a collection receptacle, and opposite side regions which are respectively in communication with a pair of spreader disks for dispersing the crop residue upon the ground behind the combine. Located within the transition duct are a pair of substantially vertical deflector vanes having transversely spaced rear ends mounted for pivoting about respective upright axes located at opposite sides of an entrance to the accelerator. The deflector vanes are pivoted between a first extreme position, wherein their forward edges engage each other thereby completely blocking crop residue from entering the accelerator and splitting the flow into two streams which are respectively directed to the pair of spreader disks, and a second extreme position, wherein their forward ends are respectively located adjacent opposite sides of the discharge opening of the chopper whereby all of the crop residue is directed to the entrance of the crop residue accelerator. When the deflector vanes are in respective positions between the extreme positions, the crop residue flow is split in desired proportions between the accelerator and the pair of spreader disks.
The foregoing and other objects of the invention will be apparent from a reading of the following description together with the appended drawings.
Referring now to
Non-grain crop residue, such as stems, stalks, husks, leaves and cobs is conveyed to the rear from the cleaning and separating system 26. Mounted to the rear of the combine harvester 10 for receiving this crop residue is a crop residue handling arrangement 34 including a rotary chopper 36 for receiving crop directly from the cleaning and separating system 26, and a residue collection blower 38 and a pair of individually driven spreader disks 40 for receiving crop discharged by the chopper 36.
Specifically, referring now also to
Embodying the present invention and located in the space between the chopper discharge duct 46 and the inlet of blower housing 48 and the two spreader disks 40 is a transition duct 64 including a top wall comprising a central top wall section 66 including a front edge 68 extending the width of the chopper 36 and being fixed to the top of the discharge duct 46. Opposite ends of the front edge 68 are respectively joined to right and left edges 70 and 72 of the central wall section, the edges 70 and 72 converging to a rear edge 74 having the width of the blower housing 48 and being fixed to a top of the blower inlet. Joined to and depending from the top wall section 66 at outer front regions are right and left, rearwardly converging, upright crop deflectors 76 and 78, respectively, each of which includes approximately a forward half which overlaps a bottom extension 80 of the chopper discharge duct 46, with front edges of the deflectors 76 and 78 abutting respective inside surfaces of opposite vertical side walls 82 of the duct 46, only the left wall 82 being visible in
Referring now also to
Thus, it will be appreciated that extension and retraction of the actuator 94 will result in the deflector vanes 86 and 88 pivoting about the axes of the pivot rods 90 among various angular positions including a first extreme position wherein forward ends of the deflector vanes 86 and 88 are in engagement with each other, as shown in
Referring back to
In a manner taught by the aforementioned U.S. Patent Application Publication No. 2008/0248843, the linear electric motor 94 is automatically controlled so as to vary the amount of chopped crop residue passing to each of the collecting blower 38 and the pair of spreader disks 40 in accordance with various soil, crop and terrain parameters, which are sensed on the go and/or are provided by geo-referenced field maps that have been previously generated and placed into the memory of an electronic control unit.
Having described the preferred embodiment, it will become apparent that various modifications can be made without departing from the scope of the invention as defined in the accompanying claims.
Patent | Priority | Assignee | Title |
10159187, | Apr 04 2016 | Chopper assembly | |
10375885, | Sep 17 2015 | Deere & Company | System for chopping and spreading residue |
11079725, | Apr 10 2019 | Deere & Company | Machine control using real-time model |
11178818, | Oct 26 2018 | Deere & Company | Harvesting machine control system with fill level processing based on yield data |
11234366, | Apr 10 2019 | Deere & Company | Image selection for machine control |
11240961, | Oct 26 2018 | Deere & Company | Controlling a harvesting machine based on a geo-spatial representation indicating where the harvesting machine is likely to reach capacity |
11375661, | Oct 16 2017 | Deere & Company | Combine harvester and discharge assembly of the same |
11467605, | Apr 10 2019 | Deere & Company | Zonal machine control |
11474523, | Oct 09 2020 | Deere & Company | Machine control using a predictive speed map |
11477940, | Mar 26 2020 | Deere & Company | Mobile work machine control based on zone parameter modification |
11564352, | Mar 31 2017 | KVERNELAND GROUP KERTEMINDE AS | Conditioner unit |
11589509, | Oct 26 2018 | Deere & Company | Predictive machine characteristic map generation and control system |
11592822, | Oct 09 2020 | Deere & Company | Machine control using a predictive map |
11635765, | Oct 09 2020 | Deere & Company | Crop state map generation and control system |
11641800, | Feb 06 2020 | Deere & Company | Agricultural harvesting machine with pre-emergence weed detection and mitigation system |
11650553, | Apr 10 2019 | Deere & Company | Machine control using real-time model |
11650587, | Oct 09 2020 | Deere & Company | Predictive power map generation and control system |
11653588, | Oct 26 2018 | Deere & Company | Yield map generation and control system |
11672203, | Oct 26 2018 | Deere & Company | Predictive map generation and control |
11675354, | Oct 09 2020 | Deere & Company | Machine control using a predictive map |
11711995, | Oct 09 2020 | Deere & Company | Machine control using a predictive map |
11727680, | Oct 09 2020 | Deere & Company | Predictive map generation based on seeding characteristics and control |
11730082, | Oct 09 2020 | Deere & Company | Crop moisture map generation and control system |
11778945, | Apr 10 2019 | Deere & Company | Machine control using real-time model |
11825768, | Oct 09 2020 | Deere & Company | Machine control using a predictive map |
11829112, | Apr 10 2019 | Deere & Company | Machine control using real-time model |
11844311, | Oct 09 2020 | Deere & Company | Machine control using a predictive map |
11845449, | Oct 09 2020 | Deere & Company | Map generation and control system |
11849671, | Oct 09 2020 | Deere & Company | Crop state map generation and control system |
11849672, | Oct 09 2020 | Deere & Company | Machine control using a predictive map |
11871697, | Oct 09 2020 | Deere & Company | Crop moisture map generation and control system |
11874669, | Oct 09 2020 | Deere & Company | Map generation and control system |
11889787, | Oct 09 2020 | Deere & Company; DEERE & COMPNAY | Predictive speed map generation and control system |
11889788, | Oct 09 2020 | Deere & Company | Predictive biomass map generation and control |
11895948, | Oct 09 2020 | Deere & Company; DEERE & COMPNAY | Predictive map generation and control based on soil properties |
8463510, | Apr 30 2010 | CNH America LLC | GPS controlled residue spread width |
8591301, | Oct 19 2007 | Redekop Enterprises Inc | Collecting corn cobs in a cart towed behind a combine harvester |
8777707, | Oct 04 2007 | ROVIC AFRICA LIMITED MAURITIUS | Spreader with GPS guided spread pattern |
8801513, | Sep 29 2009 | BLUE LEAF I P , INC , | Corn cob conveying and cleaning system using induction and air flow from a harvester for separating and spreading light crop residue |
8939828, | Sep 29 2009 | BLUE LEAF I P , INC , | Biomass conveying and distributing system for a harvester |
8961284, | Sep 14 2012 | BLUE LEAF I P , INC | System and method for controlling spreader output from a harvester |
8961285, | Sep 29 2009 | BLUE LEAF I P , INC | Residue separating feed system for biomass including an impeller |
9066470, | Dec 14 2012 | BLUE LEAF I P , INC | System and method for controlling spreader output from a harvester |
9313949, | Aug 19 2013 | CLAAS Selbstfahrende Erntemaschinen GmbH | Combine harvester comprising a chopping mechanism |
Patent | Priority | Assignee | Title |
2865416, | |||
3186460, | |||
4921469, | Nov 17 1987 | BISO B V | Distributing device for chaff choppers |
6238286, | Aug 06 1999 | Deere & Company | Crop residue spreader |
6656038, | Jul 06 1999 | Rekordverken Sweden AB | Combine harvester having a straw chopper and husk discharger |
7220179, | Jun 09 2005 | TRITANA HOLDINGS LTD | Combine harvester with ready adjustment of discharge positions of straw and chaff |
7306174, | Mar 04 2004 | Deere & Company | Broadcast width and location control for a combine spreader |
7559833, | Jun 29 2007 | BLUE LEAF I P INC | Adjustable convergence panels for discharging residue from a combine harvester |
7651391, | Aug 08 2007 | Deere & Company | Harvested crop remains output apparatus for a combine that can be switched between broad distribution and ejection elbow operating mode |
7731578, | Nov 01 2007 | IOWA STATE UNIVERSITY RESEARCH FOUNDATION, INC | Air movement unit for biomass conveyance, separation, or combine performance enhancement |
20020142814, | |||
20030017861, | |||
20030162576, | |||
20040242291, | |||
20080207288, | |||
20080248843, | |||
20090019826, | |||
20090042626, | |||
20090113867, | |||
WO3039238, |
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